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Conjugation Length Dependence of Free Radical Scavenging Efficiency of Retinal and Retinylisoflavonoid Homologues

Authors :
Yang-Lin Jiang
Jian-Ping Zhang
Peng Wang
Leif H. Skibsted
Xiao-Kun Yan
Zi-Li Chen
Bai-Ling Chen
Yi Xu
Chen-Chen Zhao
Source :
ACS Omega, Vol 5, Iss 23, Pp 13770-13776 (2020), ACS Omega, Jiang, Y-L, Chen, B-L, Yan, X-K, Xu, Y, Zhao, C-C, Chen, Z-L, Wang, P, Zhang, J-P & Skibsted, L H 2020, ' Conjugation Length Dependence of Free Radical Scavenging Efficiency of Retinal and Retinylisoflavonoid Homologues ', ACS Omega, vol. 5, no. 23, pp. 13770-13776 . https://doi.org/10.1021/acsomega.0c00925
Publication Year :
2020
Publisher :
American Chemical Society, 2020.

Abstract

Retinal (C20) and the C25 and C30 homologues were compared as radical scavengers together with their C22, C27, and C32 homologues linked with daidzein through a B′3 (isoflavonoid) to oxo-carbon (aldehyde) covalent bond. Oxidation potential in acetonitrile determined by cyclic voltammetry and ionization potential calculated by density functional theory for the aldehydes and dyads (conjugates), of which the two longer are new, decreased linearly with the wavenumber for absorption maximum. The logarithm of the second-order rate constant for scavenging of the ABTS•+ increased linearly with decreasing oxidation potential suggesting that longer conjugation in the antioxidant increases the rate of electron transfer. A similar linear free energy relationship was found for the rate of scavenging DPPH•, including daidzein, which may indicate involvement of hydrogen atom transfer from an isoflavonoid phenol. Prediction of radical scavenging efficiency from visible absorption spectra was demonstrated with the perspective of rational design of bifunctional amphiphilic antioxidants.

Details

Language :
English
ISSN :
24701343
Volume :
5
Issue :
23
Database :
OpenAIRE
Journal :
ACS Omega
Accession number :
edsair.doi.dedup.....f32958f5c805abdecbba829a2985cd54
Full Text :
https://doi.org/10.1021/acsomega.0c00925